2017ApJ...845...85L


Query : 2017ApJ...845...85L

2017ApJ...845...85L - Astrophys. J., 845, 85-85 (2017/August-2)

Analyzing the largest spectroscopic data set of hydrogen-poor super-luminous supernovae.

LIU Y.-Q., MODJAZ M. and BIANCO F.B.

Abstract (from CDS):

Super-luminous supernovae (SLSNe) are tremendously luminous explosions whose power sources and progenitors are highly debated. Broad-lined SNe Ic (SNe Ic-bl) are the only type of SNe that are connected with long-duration gamma-ray bursts (GRBs). Studying the spectral similarity and difference between the populations of hydrogen-poor SLSNe (SLSNe Ic) and of hydrogen-poor stripped-envelope core-collapse SNe, in particular SNe Ic and SNe Ic-bl, can provide crucial observations to test predictions of theories based on various power source models and progenitor models. In this paper, we collected all of the published optical spectra of 32 SLSNe Ic, 21 SNe Ic-bl, as well as 17 SNe Ic, quantified their spectral features, constructed average spectra, and compared them in a systematic way using new tools we have developed. We find that SLSNe Ic and SNe Ic-bl, including those connected with GRBs, have comparable widths for their spectral features and average absorption velocities at all phases. Thus, our findings strengthen the connection between SLSNe Ic and GRBs. In particular, SLSNe Ic have average Fe II λ5169 absorption velocities of -15,000 ± 2600 km s–1 at 10 days after peak, which are higher than those of SNe Ic by ∼7000 km s–1 on average. SLSNe Ic also have significantly broader Fe II λ5169 lines than SNe Ic. Moreover, we find that such high absorption and width velocities of SLSNe Ic may be hard to explain with the interaction model, and none of the 13 SLSNe Ic with measured absorption velocities spanning over 10 days has a convincing flat velocity evolution, which is inconsistent with the magnetar model in one dimension. Lastly, we compare SN 2011kl, the first SN connected with an ultra-long GRB, with the mean spectrum of SLSNe Ic and of SNe Ic-bl.

Abstract Copyright: © 2017. The American Astronomical Society. All rights reserved.

Journal keyword(s): methods: data analysis - supernovae: general - supernovae: individual: (ASASSN-15lh, SN 2011kl, SN 2007bi) - supernovae: individual: (ASASSN-15lh, SN 2011kl, SN 2007bi)

VizieR on-line data: <Available at CDS (J/ApJ/845/85): table1.dat table2.dat>

Simbad objects: 47

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Number of rows : 47
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 SN 2011kl SN* 00 57 22.64 -46 48 03.6           SNSLSN 232 1
2 SN 2011kg SN* 01 39 45.51 +29 55 27.0           SLSNIc 69 1
3 LSQ 12dlf SN* 01 50 29.80 -21 48 45.4           SNIc 51 0
4 SNLS 06D1hc SN* 02 24 48.25 -04 56 03.6           ~ 11 0
5 DES14X3taz SN* 02 28 04.46 -04 05 12.7           SNSL-I 45 0
6 SN 1998dt SN* 02 28 35.7 -10 33 00           SNIb 44 1
7 SN 2013hy SN* 02 42 32.82 -01 21 30.1           SLSN-I 34 1
8 SN 2007Y SN* 03 02 35.92 -22 53 50.1     17.5     SNIb 119 1
9 SN 2007D SN* 03 18 38.71 +37 36 26.4     18.2     SNIc-BL 28 1
10 PS1-10bzj SN* 03 31 39.826 -27 47 42.17           SNIc 53 0
11 SN 2009mg SN* 06 21 44.86 -59 44 26.0           SNIIb 23 1
12 iPTF 13ehe SN* 06 53 21.50 +67 07 56.0           SLSN-I 71 0
13 SN 2012il SN* 09 46 12.91 +19 50 28.7           SLSNIc 64 1
14 SNLS 07D2bv SN* 10 00 06.62 +02 38 35.8           SLSN-I 25 0
15 LSQ 14bdq SN* 10 01 41.60 -12 22 13.4           SNIc 66 0
16 SNLS 05D2bk SN* 10 02 13.96 +02 05 55.2           ~ 8 0
17 LSQ 14mo ev 10 22 41.53 -16 55 14.4           SLSN-I 55 0
18 SN 2005bf SN* 10 23 56.99 -03 11 29.3     18.0     SNIb 204 1
19 PS1-11ap SN* 10 48 27.73 +57 09 09.2           SLSNIc 55 0
20 SN 2010gx SN* 11 25 46.71 -08 49 41.4           SNIc 158 1
21 SN 2015bn SN* 11 33 41.57 +00 43 32.2           SNIc 136 0
22 LSQ 14an SN* 12 53 47.83 -29 31 27.2           SNIc 34 0
23 SN 2005ap SN* 13 01 14.84 +27 43 31.4       18.20   SLSNIc 142 1
24 SN 2013dg SN* 13 18 41.35 -07 04 43.0           SLSNIc 39 1
25 SN 2007bi SN* 13 19 20.19 +08 55 44.3       18.3   SNIcpec 220 1
26 SN 2011dh SN* 13 30 05.10555 +47 10 10.9227           SNIIb 391 1
27 SN 2011ke SN* 13 50 57.77 +26 16 42.8     18.6     SLSNIc 86 1
28 PTF 12dam SN* 14 24 46.20 +46 13 48.3           SLSNIc 160 0
29 [DAB2006b] J143227.42+333225.1 SN* 14 32 27.395 +33 32 24.83           SNIc 113 0
30 SN 2011kf SN* 14 36 57.53 +16 30 56.6           SLSNIc 39 1
31 SN 2009jh SN* 14 49 10.09 +29 25 10.4           SNII: 54 1
32 PTF 10iam SN* 15 45 30.85 +54 02 33.0           ~ 18 0
33 SN 2010mb SN* 16 00 23.10 +37 44 57.0           SNIc 32 1
34 PTF 09cnd SN* 16 12 08.94 +51 29 16.1           SLSNIc 114 0
35 PTF 09atu SN* 16 30 24.55 +23 38 25.0           SNIc? 60 0
36 SN 2010md SN* 16 37 47.00 +06 12 32.3           SNIc 94 1
37 iPTF 13ajg SN* 16 39 03.95 +37 01 38.4           SLSN-I 62 0
38 ASASSN -15lh ev 22 02 15.4 -61 39 34           ~ 169 1
39 SN 2006oz SN* 22 08 53.56 +00 53 50.4           SLSNIc 86 1
40 PS1-10afx SN* 22 11 24.162 +00 09 43.49           SNIa 40 0
41 PS1-10ky SN* 22 13 37.851 +01 14 23.57           SNIc 46 0
42 PS1-10awh SN* 22 14 29.831 -00 04 03.62           SNIc 46 0
43 SNLS 06D4eu SN* 22 15 54.291 -18 10 45.56           SNI 34 0
44 SN 1999ex SN* 22 16 07.27 -36 50 53.7   17.35       SNIb 141 2
45 SNLS 04D4ec SN* 22 16 29.286 -18 11 04.13           ~ 14 1
46 SN 2006el SN* 22 47 38.50 +39 52 27.6     18.2     SNIIb 32 1
47 CRTS SSS120810 J231802-560926 SN* 23 18 01.80 -56 09 25.6           SNI 32 0

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